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Rapid Fabrication of Cell-Laden Alginate Hydrogel 3D Structures by Micro Dip-Coating

机译:通过微浸涂快速制备载有细胞的藻酸盐水凝胶3D结构

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摘要

Development of a simple, straightforward 3D fabrication method to culture cells in 3D, without relying on any complex fabrication methods, remains a challenge. In this paper, we describe a new technique that allows fabrication of scalable 3D cell-laden hydrogel structures easily, without complex machinery: the technique can be done using only apparatus already available in a typical cell biology laboratory. The fabrication method involves micro dip-coating of cell-laden hydrogels covering the surface of a metal bar, into the cross-linking reagents calcium chloride or barium chloride to form hollow tubular structures. This method can be used to form single layers with thickness ranging from 126 to 220 µm or multilayered tubular structures. This fabrication method uses alginate hydrogel as the primary biomaterial and a secondary biomaterial can be added depending on the desired application. We demonstrate the feasibility of this method, with survival rate over 75% immediately after fabrication and normal responsiveness of cells within these tubular structures using mouse dermal embryonic fibroblast cells and human embryonic kidney 293 cells containing a tetracycline-responsive, red fluorescent protein (tHEK cells).
机译:开发简单,直接的3D制造方法以在不依赖任何复杂制造方法的情况下以3D培养细胞的过程仍然是一个挑战。在本文中,我们描述了一种新技术,无需复杂的机械即可轻松制造可扩展的3D充满细胞的水凝胶结构:仅可使用典型细胞生物学实验室中已有的设备来完成该技术。制备方法包括将覆盖金属棒表面的充满细胞的水凝胶微浸涂到交联剂氯化钙或氯化钡中,以形成空心管状结构。该方法可用于形成厚度为126至220μm的单层或多层管状结构。该制造方法使用藻酸盐水凝胶作为主要生物材料,并且可以根据所需应用添加次要生物材料。我们证明了这种方法的可行性,制造后立即存活率超过75%,并且使用小鼠真皮胚胎成纤维细胞和人胚胎肾293细胞(包含四环素反应性红色荧光蛋白(tHEK细胞))在这些管状结构内的细胞正常反应)。

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